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关于一种 V-M CRISPR-Cas 效应酶的机制和进化见解。

Mechanistic and evolutionary insights into a type V-M CRISPR-Cas effector enzyme.

机构信息

Department of Biological Sciences, Graduate School of Science, the University of Tokyo, Tokyo, Japan.

Laboratory of Microbiology, Wageningen University and Research, Wageningen, the Netherlands.

出版信息

Nat Struct Mol Biol. 2023 Aug;30(8):1172-1182. doi: 10.1038/s41594-023-01042-3. Epub 2023 Jul 17.

Abstract

RNA-guided type V CRISPR-Cas12 effectors provide adaptive immunity against mobile genetic elements (MGEs) in bacteria and archaea. Among diverse Cas12 enzymes, the recently identified Cas12m2 (CRISPR-Cas type V-M) is highly compact and has a unique RuvC active site. Although the non-canonical RuvC triad does not permit dsDNA cleavage, Cas12m2 still protects against invading MGEs through transcriptional silencing by strong DNA binding. However, the molecular mechanism of RNA-guided genome inactivation by Cas12m2 remains unknown. Here we report cryo-electron microscopy structures of two states of Cas12m2-CRISPR RNA (crRNA)-target DNA ternary complexes and the Cas12m2-crRNA binary complex, revealing structural dynamics during crRNA-target DNA heteroduplex formation. The structures indicate that the non-target DNA strand is tightly bound to a unique arginine-rich cluster in the recognition (REC) domains and the non-canonical active site in the RuvC domain, ensuring strong DNA-binding affinity of Cas12m2. Furthermore, a structural comparison of Cas12m2 with TnpB, a putative ancestor of Cas12 enzymes, suggests that the interaction of the characteristic coiled-coil REC2 insertion with the protospacer-adjacent motif-distal region of the heteroduplex is crucial for Cas12m2 to engage in adaptive immunity. Collectively, our findings improve mechanistic understanding of diverse type V CRISPR-Cas effectors and provide insights into the evolution of TnpB to Cas12 enzymes.

摘要

RNA 引导的 V 型 CRISPR-Cas12 效应物为细菌和古菌提供了针对移动遗传元件 (MGE) 的适应性免疫。在各种 Cas12 酶中,最近发现的 Cas12m2(CRISPR-Cas 类型 V-M)高度紧凑,具有独特的 RuvC 活性位点。尽管非典型的 RuvC 三联体不允许双链 DNA 切割,但 Cas12m2 仍然通过强烈的 DNA 结合来实现转录沉默,从而抵御入侵的 MGE。然而,Cas12m2 引导的 RNA 介导的基因组失活的分子机制尚不清楚。在这里,我们报告了两种状态的 Cas12m2-CRISPR RNA (crRNA)-靶 DNA 三元复合物和 Cas12m2-crRNA 二元复合物的冷冻电子显微镜结构,揭示了在 crRNA-靶 DNA 异源双链体形成过程中的结构动力学。这些结构表明,非靶 DNA 链与识别 (REC) 结构域中的独特富含精氨酸簇和 RuvC 结构域中的非典型活性位点紧密结合,确保了 Cas12m2 的强 DNA 结合亲和力。此外,Cas12m2 与 TnpB(Cas12 酶的假定祖先)的结构比较表明,特征性卷曲螺旋 REC2 插入与异源双链体的邻近基序-末端区的相互作用对于 Cas12m2 参与适应性免疫至关重要。总的来说,我们的研究结果提高了对不同类型 V CRISPR-Cas 效应物的机制理解,并为 TnpB 向 Cas12 酶的进化提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5694/10442227/29f4c0f037ec/41594_2023_1042_Fig1_HTML.jpg

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